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20182024
most citedCompact gate-based read-out of multiplexed quantum devices with a cryogenic CMOS active inductor

3 citations · 4 across the 2 of their papers we have counts for

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6 papers · 1 filter

physics.app-ph20241 cited

Enhancing Bistable Vibration Energy Harvesters with Tunable Circuits: A Comparative Analysis

Adrien Morel, Quentin Demouron, Adrien Badel

In this article, we present an analysis of the effects of nonlinear circuits on bistable vibration energy harvesters. We begin by introducing an analytical model for bistable vibra…

physics.app-ph2019

Modelling and design of highly coupled piezoelectric energy harvesters for broadband applications

D Gibus, P. Gasnier, A. Morel +2

This paper reports a method to design highly coupled piezoelectric energy harvesters with frequency tuning capabilities using nonlinear electrical techniques. A cantilever beam wit…

physics.app-ph2018

A Shock-Optimized SECE Integrated Circuit

Adrien Morel, Anthony Quelen, Pierre Gasnier +4

This paper presents a fully integrated, self-starting shock-optimized Synchronous Electric Charge Extraction (SECE) interface for piezoelectric harvesters (PEHs). After introducing…

physics.app-ph2018

A unified N-SECE strategy for highly coupled piezoelectric energy scavengers

Adrien Morel, A. Badel, Y Wanderoild +1

This paper proposes a novel vibration energy harvesting strategy based on an extension of the Synchronous Electric Charge Extraction (SECE) approach, enabling both the maximization…

physics.app-ph2018

Short Circuit Synchronized Electric Charge Extraction (SC-SECE): a tunable interface for wideband vibration energy harvesting

Adrien Morel, Adrien Badel, Pierre Gasnier +2

In this paper, we present a new harvesting interface, called Short Circuit Synchronous Electric Charge Extraction (SC-SECE). The SC-SECE strategy includes a tunable short-circuit t…

physics.app-ph2018

A 30nA Quiescent 80nW to 14mW Power Range Shock-Optimized SECE-based Piezoelectric Harvesting Interface with 420% Harvested Energy Improvement

Anthony Quelen, Adrien Morel, Pierre Gasnier +3

Piezoelectric Energy Harvesters (PEH) are usually used to convert mechanical energy (vibration, shocks) into electrical energy, in order to supply energy-autonomous sensor nodes in…